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Changes in social behavior with MAPK2 and KCTD13/CUL3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders

Copy number variations (CNVs) of the human 16p11.2 locus are associated with several developmental/neurocognitive syndromes. Particularly, deletion and duplication of this genetic interval are found in patients with autism spectrum disorders, intellectual disability and other psychiatric traits. The...

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Autores principales: Martin Lorenzo, Sandra, Muniz Moreno, Maria del Mar, Atas, Helin, Pellen, Marion, Nalesso, Valérie, Raffelsberger, Wolfgang, Prevost, Geraldine, Lindner, Loic, Birling, Marie-Christine, Menoret, Séverine, Tesson, Laurent, Negroni, Luc, Concordet, Jean-Paul, Anegon, Ignacio, Herault, Yann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10350633/
https://www.ncbi.nlm.nih.gov/pubmed/37465586
http://dx.doi.org/10.3389/fnins.2023.1148683
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author Martin Lorenzo, Sandra
Muniz Moreno, Maria del Mar
Atas, Helin
Pellen, Marion
Nalesso, Valérie
Raffelsberger, Wolfgang
Prevost, Geraldine
Lindner, Loic
Birling, Marie-Christine
Menoret, Séverine
Tesson, Laurent
Negroni, Luc
Concordet, Jean-Paul
Anegon, Ignacio
Herault, Yann
author_facet Martin Lorenzo, Sandra
Muniz Moreno, Maria del Mar
Atas, Helin
Pellen, Marion
Nalesso, Valérie
Raffelsberger, Wolfgang
Prevost, Geraldine
Lindner, Loic
Birling, Marie-Christine
Menoret, Séverine
Tesson, Laurent
Negroni, Luc
Concordet, Jean-Paul
Anegon, Ignacio
Herault, Yann
author_sort Martin Lorenzo, Sandra
collection PubMed
description Copy number variations (CNVs) of the human 16p11.2 locus are associated with several developmental/neurocognitive syndromes. Particularly, deletion and duplication of this genetic interval are found in patients with autism spectrum disorders, intellectual disability and other psychiatric traits. The high gene density associated with the region and the strong phenotypic variability of incomplete penetrance, make the study of the 16p11.2 syndromes extremely complex. To systematically study the effect of 16p11.2 CNVs and identify candidate genes and molecular mechanisms involved in the pathophysiology, mouse models were generated previously and showed learning and memory, and to some extent social deficits. To go further in understanding the social deficits caused by 16p11.2 syndromes, we engineered deletion and duplication of the homologous region to the human 16p11.2 genetic interval in two rat outbred strains, Sprague Dawley (SD) and Long Evans (LE). The 16p11.2 rat models displayed convergent defects in social behavior and in the novel object test in male carriers from both genetic backgrounds. Interestingly major pathways affecting MAPK1 and CUL3 were found altered in the rat 16p11.2 models with additional changes in males compared to females. Altogether, the consequences of the 16p11.2 genetic region dosage on social behavior are now found in three different species: humans, mice and rats. In addition, the rat models pointed to sexual dimorphism with lower severity of phenotypes in rat females compared to male mutants. This phenomenon is also observed in humans. We are convinced that the two rat models will be key to further investigating social behavior and understanding the brain mechanisms and specific brain regions that are key to controlling social behavior.
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spelling pubmed-103506332023-07-18 Changes in social behavior with MAPK2 and KCTD13/CUL3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders Martin Lorenzo, Sandra Muniz Moreno, Maria del Mar Atas, Helin Pellen, Marion Nalesso, Valérie Raffelsberger, Wolfgang Prevost, Geraldine Lindner, Loic Birling, Marie-Christine Menoret, Séverine Tesson, Laurent Negroni, Luc Concordet, Jean-Paul Anegon, Ignacio Herault, Yann Front Neurosci Neuroscience Copy number variations (CNVs) of the human 16p11.2 locus are associated with several developmental/neurocognitive syndromes. Particularly, deletion and duplication of this genetic interval are found in patients with autism spectrum disorders, intellectual disability and other psychiatric traits. The high gene density associated with the region and the strong phenotypic variability of incomplete penetrance, make the study of the 16p11.2 syndromes extremely complex. To systematically study the effect of 16p11.2 CNVs and identify candidate genes and molecular mechanisms involved in the pathophysiology, mouse models were generated previously and showed learning and memory, and to some extent social deficits. To go further in understanding the social deficits caused by 16p11.2 syndromes, we engineered deletion and duplication of the homologous region to the human 16p11.2 genetic interval in two rat outbred strains, Sprague Dawley (SD) and Long Evans (LE). The 16p11.2 rat models displayed convergent defects in social behavior and in the novel object test in male carriers from both genetic backgrounds. Interestingly major pathways affecting MAPK1 and CUL3 were found altered in the rat 16p11.2 models with additional changes in males compared to females. Altogether, the consequences of the 16p11.2 genetic region dosage on social behavior are now found in three different species: humans, mice and rats. In addition, the rat models pointed to sexual dimorphism with lower severity of phenotypes in rat females compared to male mutants. This phenomenon is also observed in humans. We are convinced that the two rat models will be key to further investigating social behavior and understanding the brain mechanisms and specific brain regions that are key to controlling social behavior. Frontiers Media S.A. 2023-07-03 /pmc/articles/PMC10350633/ /pubmed/37465586 http://dx.doi.org/10.3389/fnins.2023.1148683 Text en Copyright © 2023 Martin Lorenzo, Muniz Moreno, Atas, Pellen, Nalesso, Raffelsberger, Prevost, Lindner, Birling, Menoret, Tesson, Negroni, Concordet, Anegon and Herault. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Martin Lorenzo, Sandra
Muniz Moreno, Maria del Mar
Atas, Helin
Pellen, Marion
Nalesso, Valérie
Raffelsberger, Wolfgang
Prevost, Geraldine
Lindner, Loic
Birling, Marie-Christine
Menoret, Séverine
Tesson, Laurent
Negroni, Luc
Concordet, Jean-Paul
Anegon, Ignacio
Herault, Yann
Changes in social behavior with MAPK2 and KCTD13/CUL3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders
title Changes in social behavior with MAPK2 and KCTD13/CUL3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders
title_full Changes in social behavior with MAPK2 and KCTD13/CUL3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders
title_fullStr Changes in social behavior with MAPK2 and KCTD13/CUL3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders
title_full_unstemmed Changes in social behavior with MAPK2 and KCTD13/CUL3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders
title_short Changes in social behavior with MAPK2 and KCTD13/CUL3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders
title_sort changes in social behavior with mapk2 and kctd13/cul3 pathways alterations in two new outbred rat models for the 16p11.2 syndromes with autism spectrum disorders
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10350633/
https://www.ncbi.nlm.nih.gov/pubmed/37465586
http://dx.doi.org/10.3389/fnins.2023.1148683
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